Articles | Volume 23, issue 3
https://doi.org/10.5194/hess-23-1533-2019
© Author(s) 2019. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
https://doi.org/10.5194/hess-23-1533-2019
© Author(s) 2019. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
Future projections of temperature and mixing regime of European temperate lakes
Leibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB),
Department of Ecohydrology, Müggelseedamm 310, 12587 Berlin, Germany
Helmholtz Centre for Environmental Research (UFZ), Department of Lake
Research, Brückstrasse 3a, 39114 Magdeburg, Germany
Wim Thiery
ETH Zurich, Institute for Atmospheric and Climate Science,
Universitaetstrasse 16, 8092 Zurich, Switzerland
Vrije Universiteit Brussel, Department of Hydrology and Hydraulic
Engineering, Pleinlaan 2, 1050 Brussels, Belgium
Georgiy Kirillin
Leibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB),
Department of Ecohydrology, Müggelseedamm 310, 12587 Berlin, Germany
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79 citations as recorded by crossref.
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- The pace of shifting seasons in lakes R. Woolway 10.1038/s41467-023-37810-4
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- A simple model for predicting oxygen depletion in lakes under climate change L. Nkwalale et al. 10.1080/20442041.2024.2306113
- Unravelling winter diatom blooms in temperate lakes using high frequency data and ecological modeling X. Kong et al. 10.1016/j.watres.2020.116681
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- 20th century climate warming and human disturbance triggered high aquatic production and strong water-column mixing in maar Lake Xiaolongwan, northeastern China L. Tu et al. 10.1016/j.ancene.2024.100442
- Intercomparison of Thermal Regime Algorithms in 1‐D Lake Models M. Guo et al. 10.1029/2020WR028776
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- Ensemble of models shows coherent response of a reservoir’s stratification and ice cover to climate warming J. Feldbauer et al. 10.1007/s00027-022-00883-2
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- Global lake thermal regions shift under climate change S. Maberly et al. 10.1038/s41467-020-15108-z
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- The Mixing Regime and Turbidity of Lake Banyoles (NE Spain): Response to Climate Change T. Serra et al. 10.3390/w12061621
- Global lake responses to climate change R. Woolway et al. 10.1038/s43017-020-0067-5
- High-frequency soluble reactive phosphorus in-situ analysis in lakes T. Dadi et al. 10.1016/j.ecolind.2023.111221
- Future projections of water level and thermal regime changes of a multipurpose subtropical reservoir (Sao Paulo, Brazil) C. Barbosa et al. 10.1016/j.scitotenv.2020.144741
- Does the Ice Age legacy end in Central Europe? The shrinking distributions of glacial relict crustaceans in Lithuania A. Audzijonyte et al. 10.1002/aqc.4001
- Lakes in Hot Water: The Impacts of a Changing Climate on Aquatic Ecosystems R. Woolway et al. 10.1093/biosci/biac052
- How does lake water clarity affect lake thermal processes? Q. Zhang & X. Ma 10.1016/j.heliyon.2022.e10359
- Reduction of thermal stratification due to global warming in winter and spring J. Liu et al. 10.1007/s00343-024-4010-3
- The Impact of Climate Warming on Lake Surface Heat Exchange and Ice Phenology of Different Types of Lakes on the Tibetan Plateau J. Lang et al. 10.3390/w13050634
- The red alga Hildenbrandia rivularis is a weak indicator of the good ecological status of riverine habitats E. Jakubas-Krzak et al. 10.1016/j.ecolind.2023.109918
- Emergence of lake conditions that exceed natural temperature variability L. Huang et al. 10.1038/s41561-024-01491-5
- Timing of spring events changes under modelled future climate scenarios in a mesotrophic lake J. Mesman et al. 10.5194/hess-28-1791-2024
- Ice Cover and Extreme Events Determine Dissolved Oxygen in a Placid Mountain Lake G. Flaim et al. 10.1029/2020WR027321
- Unraveling Lake Geneva's hypoxia crisis in the Anthropocene L. Soares et al. 10.1002/lol2.10435
Latest update: 14 Dec 2024
Short summary
We used models to project future temperature and mixing in temperate lakes. Lakes will probably warm faster in winter than in summer, making ice less frequent and altering mixing. We found that the layers that form seasonally in lakes (ice, stratification) and water clarity affect how lakes accumulate heat. Seasonal changes in climate were thus important. This helps us better understand how different lake types respond to warming and which physical changes to expect in the future.
We used models to project future temperature and mixing in temperate lakes. Lakes will probably...